首页> 外文期刊>Macromolecules >CATIONIC RING-OPENING POLYMERIZATION OF CYCLIC CARBONATES WITH ALKYL HALIDES TO YIELD POLYCARBONATE WITHOUT THE ETHER UNIT BY SUPPRESSION OF ELIMINATION OF CARBON DIOXIDE
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CATIONIC RING-OPENING POLYMERIZATION OF CYCLIC CARBONATES WITH ALKYL HALIDES TO YIELD POLYCARBONATE WITHOUT THE ETHER UNIT BY SUPPRESSION OF ELIMINATION OF CARBON DIOXIDE

机译:通过消除二氧化碳消除阳离子化环碳与烷基卤化物的开环聚合,生成无醚的碳酸酯

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Cationic ring-opening polymerization of cyclic carbonates with alkyl halide as initiator during which no decarboxylation takes place is described in detail, using 5,5-dimethyl-1,3-dioxan-2-one (1), 1,3-dioxan-2-one (2), 5-n-butyl-1,3-dioxan-2-one (5), and 1,3-dioxaspiro[5.5]undecan-2-one (6) as monomers. Cationic polymerizations of 2, 5, and 6 with cationic initiators such as methyl triflate and boron trifluoride etherate were carried out under various conditions. In the polymerizations decarboxylation (elimination of carbon dioxide) during the polymerization occurred to yield the corresponding polycarbonate with ether units (5-10%) in the main chain. 6 only gave a small amount of polymer. Prolonged reaction time and enhanced temperature accelerated the decarboxylation. Reactions of the polycarbonate of 2 with several cationic initiators including methyl iodide were monitored by H-1 NMR and gel permeation chromatography. Both a decrease in the polymer molecular weight and an increase in the ratio of ether unit, which strongly depended upon the kind of initiator, were observed. The occurrence of the decarboxylation in the propagation step was suggested by PM3 molecular orbital calculations using model compounds. Direct reaction of 2 with an excess of alkyl halide such as methyl iodide and benzyl bromide at 120 degrees C afforded the corresponding 1:1 adducts 7. Yield of 7a from methyl iodide was only 10%, while yield of 7h, from benzyl bromide was 78%. Cationic polymerizations of 1, 5, and 6 with a few alkyl halides such as methyl iodide, benzyl bromide, and allyl iodide were studied under various conditions, and corresponding polycarbonates without any ether unit were obtained (<(M)over bar (n)> 1000-3700), while 6 gave no polymer. A terminal structure of the polymers obtained was determined by H-1 NMR, and the polymerization with ethyl 3-iodopropyl carbonate as its model compound was examined to prove the propagation structure of the active site. The mechanism of the decarboxylation was discussed from the viewpoint of degree of interaction between HOMOs and LUMOs of cyclic carbonate and initiator and on the basis of the experimental results obtained in this work. [References: 22]
机译:使用5,5-二甲基-1,3-二恶烷-2-酮(1),1,3-二恶烷-,详细描述了以烷基卤化物为引发剂的环状碳酸酯的阳离子开环聚合,在此期间不发生脱羧反应。作为单体的2-一(2),5-正丁基-1,3-二恶烷-2-一(5)和1,3-二氧杂螺[5.5]十一烷-2-一(6)。在各种条件下进行2、3、5和6与阳离子引发剂(例如三氟甲磺酸甲酯和三氟化硼醚化物)的阳离子聚合。在聚合反应中,发生聚合反应中的脱羧作用(消除二氧化碳),得到相应的在主链中带有醚单元(5-10%)的聚碳酸酯。 6仅给出少量聚合物。延长的反应时间和升高的温度加速了脱羧。通过1 H NMR和凝胶渗透色谱法监测2的聚碳酸酯与几种阳离子引发剂(包括甲基碘)的反应。观察到聚合物分子量的降低和醚单元的比例的增加都强烈地取决于引发剂的种类。通过使用模型化合物进行的PM3分子轨道计算,表明了在扩散步骤中发生了脱羧反应。 2与过量的烷基卤(例如甲基碘和苄基溴)在120℃下直接反应,得到相应的1:1加合物7。甲基碘的7a收率仅为10%,而苄基溴的7h收率为7h。 78%。在各种条件下研究1、5和6与少量烷基卤(例如碘甲烷,苄基溴和烯丙基碘)的阳离子聚合,并获得相应的不含任何醚单元的聚碳酸酯(<(M)(bar(n)) > 1000-3700),而6没有得到聚合物。通过H-1 NMR确定所获得的聚合物的末端结构,并且检查了以碳酸3-碘代丙基乙酯为模型化合物的聚合,以证明活性位点的传播结构。从环状碳酸酯与引发剂的HOMO和LUMO之间的相互作用程度出发,并基于本实验获得的实验结果,探讨了脱羧机理。 [参考:22]

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